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在水稻细菌性条斑病菌中,极生鞭毛基因的调控由群体感应和FlhDC介导。

Regulation of polar flagellum genes is mediated by quorum sensing and FlhDC in Burkholderia glumae.

作者信息

Kim Jinwoo, Kang Yongsung, Choi Okhee, Jeong Yeonhwa, Jeong Jae-Eun, Lim Jae Yun, Kim Minkyun, Moon Jae Sun, Suga Hiroaki, Hwang Ingyu

机构信息

Department of Agricultural Biotechnology, Seoul National University, Seoul 151-921, Korea.

出版信息

Mol Microbiol. 2007 Apr;64(1):165-79. doi: 10.1111/j.1365-2958.2007.05646.x.

Abstract

The bacterium Burkholderia glumae causes rice grain rot by producing toxoflavin, whose expression is regulated by quorum sensing (QS). We report a major deviation from the current paradigm for the regulation of bacterial polar flagellum genes. The N-octanoyl homoserine lactone (C8-HSL)-deficient mutant of B. glumae is aflagellate and has lost the ability to swim and swarm at 37 degrees C. Mutagenesis of the bacterium with the mini-Tn5rescue identified an IclR-type transcriptional regulator, called QsmR, which is important for flagellum formation. TofR, which is a cognate C8-HSL receptor, activated qsmR expression by binding directly to the qsmR promoter region. From the flagellum gene cluster, we identified flhDC homologues that are directly activated by QsmR. FlhDC in turn activates the expression of genes involved in flagellum biosynthesis, motor functions and chemotaxis in B. glumae. Non-motile qsmR, fliA and flhDC mutants produced toxoflavin, but lost pathogenicity for rice. The unexpected discovery of FlhDC in a polarly flagellate bacterium suggests that exceptions to the typical regulatory mechanisms of flagellum genes exist in Gram-negative bacteria. The finding that functional flagella play critical roles in the pathogenicity of B. glumae suggests that either QS or flagellum formation constitutes a good target for the control of rice grain rot.

摘要

稻谷伯克霍尔德氏菌通过产生毒黄素导致水稻谷粒腐烂,毒黄素的表达受群体感应(QS)调控。我们报道了细菌极鞭毛基因调控当前范式的一个主要偏差。稻谷伯克霍尔德氏菌的N - 辛酰高丝氨酸内酯(C8 - HSL)缺陷型突变体无鞭毛,在37℃时丧失了游动和群游能力。用mini - Tn5拯救对该细菌进行诱变鉴定出一种IclR型转录调节因子,称为QsmR,它对鞭毛形成很重要。TofR是一种同源C8 - HSL受体,通过直接结合qsmR启动子区域激活qsmR表达。从鞭毛基因簇中,我们鉴定出了被QsmR直接激活的flhDC同源物。FlhDC进而激活稻谷伯克霍尔德氏菌中参与鞭毛生物合成、运动功能和趋化作用的基因表达。不运动的qsmR、fliA和flhDC突变体产生毒黄素,但对水稻失去致病性。在极鞭毛细菌中意外发现FlhDC表明革兰氏阴性菌中存在鞭毛基因典型调控机制的例外情况。功能性鞭毛在稻谷伯克霍尔德氏菌致病性中起关键作用这一发现表明,群体感应或鞭毛形成构成了控制水稻谷粒腐烂的良好靶点。

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